EXPERIMENTAL STUDY OF SNOW LOAD DISTRIBUTION ON A SHELL OF THE GRAND SPORTS ARENA OF LUZHNIKI OLYMPIC COMPLEX

I. Lebedeva, M. Farfel, D. Konyashin, M. M. Berezin
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引用次数: 1

Abstract

Introduction. The mechanism of the formation of snow deposits on the shell of the Luzhniki GSA and their redistribution in winter were established on the basis of the data obtained during the monitoring of the snow load for over 20 years.Aim. In this article, the mechanism of the formation of snow deposits and their distribution on the shell of the Luzhniki GSA were determined, along with the numerical values of the form factor μ characterizing the transition from the ground snow load to the snow load on the shell.Materials and methods. The measurements of the load and density of snow deposits on the shell of the Luzhniki GSA were carried out from 1998 to 2019. The obtained results were compared with the parallel measurements of ground snow load (GSL) in Luzhniki. In addition, the snow load, as well as statistical data analysis on the maximum annual values of the GSL, were analyzed using the hydrometeorological data of decadic snow surveys in Moscow, performed by the V.A. Mikhelson Meteorological Observatory following the dates of field measurements. The graphs of the repeatability of wind directions for the month preceding the observation dates were plotted.Results. The maximum values of the form factor μ for each section of the shell were obtained. The areas characterized by increased snow deposition on the shell during various periods of snow accumulation andthe dependence of their formation on wind speeds and directions in winter were revealed. Graphs depicting the distribution of snow load on the surface by observation years were plotted. It was established that the values of snow loads on the GSA shell during the observation period generally lay within the design values, except for local zones near the internal contour during the installation of the canopy.Conclusion. It was shown that the formation, accumulation, and redistribution of snow deposits on the shell comprise a complex and uneven process, varying from winter to winter. When selecting the analytical models of snow loads for calculating unique load-bearing structures, it is necessary to account for the most unfavorable wind flow directions, at which an uneven snow deposition pattern occurs, as well as the physical properties of the shell and field observations.
卢日尼基奥林匹克综合场馆大体育馆壳体上雪荷载分布的实验研究
介绍。根据近20年的雪荷载监测资料,建立了卢日尼基冰原壳层积雪的形成机制及其冬季再分布规律。本文确定了卢日尼基高原积雪形成的机理及其壳层分布,并确定了表征地面雪荷载向壳层雪荷载过渡的形状因子μ的数值。材料和方法。1998年至2019年期间,对卢日尼基GSA外壳上积雪的负荷和密度进行了测量。将所得结果与卢日尼基地区地面雪荷载(GSL)的平行测量结果进行了比较。此外,利用V.A. Mikhelson气象台在莫斯科进行的十年积雪调查的水文气象资料,根据野外观测资料,分析了雪荷载和GSL年最大值的统计数据分析。绘制了观测日期前一个月的风向可重复性曲线图。得到了壳体各截面形状因子μ的最大值。揭示了不同时期壳上积雪增多的区域及其形成与冬季风速和风向的关系。绘制了地表雪荷载随观测年份的分布曲线图。结果表明,观测期间GSA壳体上的雪荷载值除了在安装顶棚时靠近内部轮廓的局部区域外,基本都在设计值范围内。结果表明,雪沉积在贝壳上的形成、积累和再分布是一个复杂而不均匀的过程,在不同的冬季有所不同。在选择雪荷载分析模型以计算独特的承重结构时,需要考虑最不利的风向,即不均匀的雪沉积模式,以及壳体的物理性质和现场观测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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